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Revealing the long-term behaviour of nZVI and biochar in metal(loid)-contaminated soil: focus on Fe transformations
Indexado
WoS WOS:001094620100001
DOI 10.1039/D3EN00429
Año 2023
Tipo artículo de investigación

Citas Totales

Autores Afiliación Chile

Instituciones Chile

% Participación
Internacional

Autores
Afiliación Extranjera

Instituciones
Extranjeras


Abstract



The long-term behaviour of stabilising amendments for soil remediation is rarely being tested. Therefore, we conducted time-dependent experiments using contaminated soil from a post-mining area. The soil was individually incubated for 1, 3, 12, and 15 months with i) biochar (BC), ii) nano zero-valent iron (nZVI), and iii) a composite of nZVI and BC (nZVI-BC). Two experimental designs were realised: i) mixing of the soil with the amendments and ii) applying the amendments as a layer between the soil and silica sand. With this dual approach, both the immobilisation efficiency and the solid phase transformations of the amendments were investigated under the effect of time. Solid-state (SEM/EDS, XAS, XRD) and liquid phase (pore water sampling, soil extractions) analyses were employed for a holistic assessment of the amendments. The three tested amendments demonstrated different efficiencies for metal(loid) immobilisation in this soil. Biochar and nZVI-BC were mostly efficient for long-term immobilisation, especially for Zn and Cd, while the efficiency of nZVI was instant but rather short-term and preferably towards Pb and As. The oxidation of nZVI was not directly proportional to time, and the nZVI products, such as lepidocrocite, ferrihydrite, and magnetite, were identified in the same proportions regardless of Fe0 oxidation. Implications of natural attenuation were also noticed in the control soil. However, enhancement of the contaminated soil with amendments is still recommended since the important metal(loid) scavengers (Fe and/or Mn oxides) in the soil occurred at least 2x more often after the amendment application.

Revista



Revista ISSN
Environmental Science Nano 2051-8153

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Disciplinas de Investigación



WOS
Chemistry, Multidisciplinary
Environmental Sciences
Nanoscience & Nanotechnology
Scopus
Materials Science (Miscellaneous)
Environmental Science (All)
SciELO
Sin Disciplinas

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Publicaciones WoS (Ediciones: ISSHP, ISTP, AHCI, SSCI, SCI), Scopus, SciELO Chile.

Colaboración Institucional



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Autores - Afiliación



Ord. Autor Género Institución - País
1 Mitzia, Aikaterini - Czech Univ Life Sci Prague - República Checa
2 Vitkova, Martina - Czech Univ Life Sci Prague - República Checa
3 Ratie, Gildas - Czech Univ Life Sci Prague - República Checa
Univ Orleans - Francia
4 Choteborsky, Rostislav - Czech Univ Life Sci - República Checa
5 Vantelon, Delphine - Synchrotron SOLEIL - Francia
6 Neaman, Alexander - Universidad de Tarapacá - Chile
7 Komarek, Michael - Czech Univ Life Sci Prague - República Checa

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Financiamiento



Fuente
Russian Foundation for Basic Research
Czech Science Foundation - the Grant Agency of the Czech Republic
IGA of the Faculty of Environmental Sciences CZU Prague
Labex VOLTAIRE, France

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Agradecimientos



Agradecimiento
This study was realised using funds from the Czech Science Foundation - the Grant Agency of the Czech Republic (project No. 21-23794J), the Russian Foundation for Basic Research (project No. 20-54-26012), and the IGA of the Faculty of Environmental Sciences CZU Prague "Characterisation and testing of novel composites for metal/metalloid stabilisation in contaminated soils - No. 20184227". Gildas Ratie acknowledges Labex VOLTAIRE, France (10-LABX-0100). The authors are thankful to Marie Kralova (CZU Prague), Adela & Scaron;ipkova (CZU Prague), Andrea & Zcaron;itkova (CZU Prague), Monika Hromasova (CZU Prague), Lenka Pavl & uring; (CZU Prague), and Noemi Meszarosova (CAS) for their analytical work. The authors would like to thank two anonymous reviewers for their constructive comments.

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